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Stucki, Roger – Journal of Chemical Education, 1984
Discusses why polymer chemistry should be added to the general chemistry curriculum and what topics are appropriate (listing traditional with related polymer topics). Also discusses when and how these topics should be taught. (JN)
Descriptors: Chemistry, Course Descriptions, High Schools, Science Curriculum

Hostettler, John D. – Journal of Chemical Education, 1985
A geochemistry course for chemists is described. Includes: (1) general course information; (2) subject matter covered; and (3) a consideration of the uses of geochemistry in a chemistry curriculum, including geochemical "real world" examples, geochemistry in general chemistry, and geochemistry as an elective. (JN)
Descriptors: Chemistry, College Science, Course Descriptions, Geology

Adey, Philip – School Science Review, 1987
Described is the Cognitive Acceleration through Science Education (CASE) project in Great Britain. The project is investigating the possiblilty of accelerating the rate at which secondary pupils' logical thinking develops by using the science curriculum. A pilot project and parts of the curriculum are discussed. (RH)
Descriptors: Academic Achievement, Course Descriptions, Logical Thinking, Science Curriculum

Treblow, Mordecai; And Others – Journal of Chemical Education, 1984
Presented are goals and a topical outline for a one-semester chemistry course for students in the health professions. The outline is intended to be a model rather than an "official" course in the field. Several points are offered, particularly for faculty new to teaching such a chemistry course. (JN)
Descriptors: Chemistry, College Science, Course Descriptions, Health Occupations
SASTA Journal, 1980
Presents the course outline for "Science: A Way of Knowing," a content-integrated science course designed for high school students to learn about the nature, the processes, and the social aspects of science. (CS)
Descriptors: Course Descriptions, Interdisciplinary Approach, Science Curriculum, Science Education
Trefz, Rick – 1996
The academic needs of gifted students are qualitatively different from those of regular students. This document describes a course that is differentiated for gifted students in the areas of content, process, learning environment, and product. Emphasis is placed on higher order thinking skills through independent study dealing with real world…
Descriptors: Academically Gifted, Course Descriptions, Problem Solving, Science Activities

Kilker, Richard, Jr. – Journal of Chemical Education, 1985
Describes a chemistry course designed, in cooperation with local public school districts, to intellectually challenge a group of 8th, 9th, and 10th grade students. Organic chemistry and biochemistry are integrated into the course (titled Chemistry and Everyday Life) to emphasize practical applications of chemistry. The course syllabus is included.…
Descriptors: Academically Gifted, Chemistry, Course Descriptions, Science Curriculum

Bernstein, Stanley – Journal of College Science Teaching, 1985
Describes a course which examines the history and philosophy of the relationship between science and society and applies these concepts to such current issues as sociobiology. Includes course outline, instructional strategies, and bibliography of pertinent books, papers, and lecture notes. (JN)
Descriptors: College Science, Course Descriptions, Higher Education, Science Curriculum
Curd, Martin – Science, Technology, and Society, 1981
Outlined is a philosophy course designed for science and engineering students taught at Purdue University. The course focuses on technology and human values. Includes the rationale, general organization, required books, reading list, evaluation, lecture topics, and suggested essay topics. (DC)
Descriptors: Course Descriptions, Engineering Education, Higher Education, Philosophy

Ham, Russell – Journal of College Science Teaching, 1981
Described is an environmental chemistry course for nonscience majors at McNeese State University. The course emphasizes consumer chemistry. Topics discussed include prescription drugs, refinery processes, nuclear chemistry and chemistry and the environment. Texts, supplementary materials and a detailed course outline are included. (DS)
Descriptors: Chemistry, College Science, Course Descriptions, Higher Education

Hobson, Art – Journal of College Science Teaching, 1996
Outlines the importance of teaching the methods of science. Describes ways in which teachers can incorporate lessons about scientific methodology into any existing introductory science course. (JRH)
Descriptors: Course Descriptions, Higher Education, Science Curriculum, Science History
Royal Society, London (England). – 1984
After publication in 1982 of the Royal Society report "Science Education 11-18 in England and Wales," the Physics Education Joint Committee of the Royal Society and Institute of Physics was established. A working party of this Joint Committee has now produced this reduced-content 16+ syllabus in physics. The main intention of the working…
Descriptors: Course Content, Course Descriptions, Foreign Countries, Physics
Royal Society, London (England). – 1985
This syllabus (which is not a teaching syllabus) is intended to be an essential minimum core syllabus in biology for children of all abilities. It consists of: (1) a foreword, which outlines how the syllabus was generated; (2) an introduction, which provides information about the use of the syllabus in biology teaching (for example, the local…
Descriptors: Biology, Course Content, Course Descriptions, Foreign Countries

Chapman, Bryan R. – Physics Education, 1984
Examines various issues related to the establishment of a core of physics studies at 16+ and 18+. Indicates that a core physics syllabus should be concerned with phenomena, theory, models, and applications and not with such topics as the use of a U tube manometer. (JN)
Descriptors: Core Curriculum, Course Descriptions, Curriculum Development, High Schools

Kimmel, Howard S.; Tomkins, Reginald P. T. – Journal of Chemical Education, 1985
A senior-level, elective course on synthetic fuels was developed for chemistry and chemical engineering majors. The topics covered in this course, instructional strategies used, and independent student projects are described. (JN)
Descriptors: Chemical Engineering, Chemistry, College Science, Course Content